Velasco A M, Leguina J I, Lazcano A
Facultad de Ciencias, UNAM, Apdo. Postal 70-407, Cd. Universitaria, México D. F. 04510, Mexico.
J Mol Evol. 2002 Oct;55(4):445-59. doi: 10.1007/s00239-002-2340-2.
Among the different biosynthetic pathways found in extant organisms, lysine biosynthesis is peculiar because it has two different anabolic routes. One is the diaminopimelic acid pathway (DAP), and the other over the a-aminoadipic acid route (AAA). A variant of the AAA route that includes some enzymes involved in arginine and leucine biosyntheses has been recently reported in Thermus thermophilus (Nishida et al. 1999). Here we describe the results of a detailed genomic analysis of each of the sequences involved in the two lysine anabolic routes, as well as of genes from other routes related to them. No evidence was found of an evolutionary relationship between the DAP and AAA enzymes. Our results suggest that the DAP pathway is related to arginine metabolism, since the lysC, asd, dapC, dapE, and lysA genes from lysine biosynthesis are related to the argB, argC, argD, argE, and speAC genes, respectively, whose products catalyze different steps in arginine metabolism. This work supports previous reports on the relationship between AAA gene products and some enzymes involved in leucine biosynthesis and the tricarboxylic acid cycle (Irvin and Bhattacharjee 1998; Miyazaki et al. 2001). Here we discuss the significance of the recent finding that several genes involved in the arginine (Arg) and leucine (Leu) biosynthesis participate in a new alternative route of the AAA pathway (Miyazaki et al. 2001). Our results demonstrate a clear relationship between the DAP and Arg routes, and between the AAA and Leu pathways.
在现存生物体中发现的不同生物合成途径中,赖氨酸生物合成很独特,因为它有两条不同的合成代谢途径。一条是二氨基庚二酸途径(DAP),另一条是通过α-氨基己二酸途径(AAA)。最近在嗜热栖热菌中报道了AAA途径的一个变体,该变体包含一些参与精氨酸和亮氨酸生物合成的酶(Nishida等人,1999年)。在这里,我们描述了对参与两条赖氨酸合成代谢途径的每个序列以及与之相关的其他途径的基因进行详细基因组分析的结果。未发现DAP和AAA酶之间存在进化关系的证据。我们的结果表明,DAP途径与精氨酸代谢有关,因为赖氨酸生物合成中的lysC、asd、dapC、dapE和lysA基因分别与精氨酸代谢中的argB、argC、argD、argE和speAC基因相关,它们的产物催化精氨酸代谢的不同步骤。这项工作支持了先前关于AAA基因产物与一些参与亮氨酸生物合成和三羧酸循环的酶之间关系的报道(Irvin和Bhattacharjee,1998年;Miyazaki等人,2001年)。在这里,我们讨论了最近发现的参与精氨酸(Arg)和亮氨酸(Leu)生物合成的几个基因参与AAA途径新的替代途径这一发现的意义(Miyazaki等人,2001年)。我们的结果表明DAP和Arg途径之间以及AAA和Leu途径之间存在明显的关系。